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Experimental Study of Static Calibration Based on Atomic- emission Double Spectrum Line Temperature Measuring System

机译:基于原子发射双谱线测温系统的静态校正实验研究

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Based on the double line of atomic emission temperature measurement technology, combined with storage measurement technology, the photoelectric thermometer was designed by using Y-type fiber, narrow band filter, silicon photomultiplier tube (SiPM). Record the temperature value measured by the photo thermometer and the temperature value displayed on the LCDpanel of the chamber furnace, and obtain the static sensitivity coefficient K by the least squares method. The temperature indicated by the high-temperature box furnace is used as the standard temperature value. A static calibration system is built. The temperature of the heated copper sheet was measured using a statically calibrated photometric temperature measurement system and compared with the measurement results of the M5 infrared. The experimental results verify the feasibility of temperature measurement system. The research work in this paper has important reference value for the development of temperature measurement technology ofatomic emission spectroscopy.
机译:基于原子发射温度测量技术的双线技术,结合存储测量技术,利用Y型光纤,窄带滤光片,硅光电倍增管(SiPM)设计了光电温度计。记录由光温度计测得的温度值和在室内炉的LCD面板上显示的温度值,并通过最小二乘法获得静态灵敏度系数K。高温箱式炉指示的温度用作标准温度值。建立了静态校准系统。使用静态校准的光度温度测量系统测量加热的铜片的温度,并将其与M5红外的测量结果进行比较。实验结果验证了测温系统的可行性。本文的研究工作对原子发射光谱温度测量技术的发展具有重要的参考价值。

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